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Demo   The i.MX 7 series is a highly integrated multi-market applications processor designed to enable secure and portable applications within the Internet of Things. The i.MX 7 series is the first device in the market utilizing both the ARM ® Cortex ® -A7 and Cortex-M4 cores for general purpose programmable processing. Its heterogeneous asymmetric architecture provides the ultimate flexibility for customers by enabling a single-chip solution that can run sophisticated operating systems and provide real-time responsiveness. The i.MX 7 series incorporates four independently controlled resource domains for maximum effectiveness and security when partitioning system resources such as memory and peripherals.   Demo / Product Features Advanced Heterogeneous Architecture Up to Dual Cortex-A7 @ 1GHz Cortex-M4 @ 200MHz Unmatched Power Efficiency for Active and Low Power modes Complete Security Infrastructure Secure Boot Crypto H/W Acceleration Internal and External Tamper Detection Enabling Flexible High Speed Connectivity PCI-e v2.1 Dual Gbit Ethernet  with AVB DDR QuadSPI support eMMC 5.0   NXP recommends the following links for additional information i.MX 7 Series Applications Processors: Multicore, ARM® Cortex®-A7 Core, ARM Cortex-M4 Core     C23
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This video shows a part of the LS1046A demonstration of capabilities in different high-demandant computing tasks.
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What is an IoT Gateway? An IoT Gateway is essential part of a Trust enabled, power-efficient IoT deployment in buildings, homes, street and industrial sites. The low-power foot-print is achieved by having low-power, low-cost sensor nodes connecting over low-power, shorter range radio networks. The IoT Gateway bridges between these wireless sensor networks and the enterprise or carrier networks.   Furthermore, the IoT gateway also provides a platform for local data filtering and decision making. This is context aware computing. In near future, the cost of processing data will be less than the cost of moving data across a network and less than the cost of data storage. It makes sense to distribute the intelligence and process/filer data close to the data source. In this session, one of the first public demo’s of LS1021A, NXP will demonstrate an ready-to-use IoT gateway platform together with sensor and cloud connectivity. Value Propositions    Coupling IoT to SDN and Big Data. LS10121A IoT Gateway   Customer-premise IoT Gateways – Industrial, Enterprise, Home, Street-side     Distributed/Local Intelligence for real-time decision making and management (context aware computing)                                                                     High-availability, Trust Enabled networking, highly power efficient      NXP Recommends: Product Link LS1021A-IoT Gateway Reference Design LS1021A-IoT Gateway Reference Design | NXP 
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Description Application demo recognizes 10 keywords: "yes", "no", "up", "down", "left", "right", "on", "off", "stop", "go" spoken into the on-board microphone. Use terminal output - 115200 baud - to see results. This demo was created as part of hands-on lab demonstrating model conversion which can be found here: https://community.nxp.com/docs/DOC-344227. Software The RT1060 SDK should already be installed in MCUXpresso IDE. Drag-and-drop the .zip file into the Project Explorer view, and then compile and flash. NXP Product Link i.MX RT1060 Evaluation Kit i.MX RT1060 Evaluation Kit | NXP 
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Watch the new NXP high power RF highlights from IMS 2016. With more than 50 years of technology development and innovation, NXP's new RF Power group enables our customers to develop cutting edge cellular infrastructure, industrial and commercial solutions. Catch the Wave! We hope to see you next year in Hawaii at IMS 2017!     Explore NXP RF at IMS 2016: Highlights - YouTube      NXP Recommends Digital Front End Processors Car radio Tuners Low Power TX/RX Discrete Transistors PLLs and Oscillators RF Mixers RF Power Transistors RF Amplifiers - Low / Medium Power Millimeter - Wave Solutions Control Circuits Low Power TX/RX ICs   For specific product on the RF portfolio per above, please click on this link: RF|NXP   Links to Video links Explore NXP RF at IMS 2016: Highlights Outdoor Small Cells for Cellular Infrastructure 4 New Cellular GaN Technology Doherty RF Power Transistors Wideband GaN Communications for Military Applications Different RF Low Power Devices, Different Line-Ups RF Powers Up Digital Front End Processor for Really Big Spaces Small Cell Doherty Evaluation Board: Richardson RFPD and NXP Smart Antenna Solutions for "Internet Everywhere" L-Band and S-Band Radar Devices for Aerospace Aerospace Communications with Highest Power LDMOS Narrowband Transistor Millimeter Wave Radar for Breakthrough Auto Designs Wayv Portable, Battery-Operated RF Cooking Appliance NXP’s 1500 W MRF1K50 RF Power Transistor Benchmark Small Cell Solution for MIMO Radios
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Connected mobility: Phones, drones and connected automobiles The number of people living in cities is expected to double by 2050, meaning congestion and pollution will increasingly be a problem for city dwellers. As a result, the cities of the future will demand smarter solutions for urban living such as intelligent traffic management solutions and connected vehicles, including drones. This transformation is already well underway. Innovations are helping to create a more entertaining, customised experience for consumers as well as making transport, on the land and in the air, safer and easier. But this is just the beginning, let NXP Semiconductors, pioneers of the connected car, give you a glimpse of the future of urban transport and the technology that will enable it   Reveal: 2016 Rinspeed Etos Concept Car - YouTube 
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Demo NXP boasts about power and prowess in the industry’s highest power density in LDMOS technology with a compact 750 W 1.3 x 2.55 inch reference circuit. See this demo for how our transistors deliver highest RF output power for automatic dependent surveillance – broadcast (ADS-B), identification friend-or-foe (IFF), and distance measuring equipment (DME) systems. Product AFV10700H|700 W Pulse, 1030-1090 MHz, 52 V|NXP (50V LDMOS, 750 W Peak, Gain 17dB, Efficiency 58%) Link www.nxp.com/RFPower
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Description With the RF Cicuit Collection, NXP customer can browse, dowlnload and order through a large number of Reference Circuit documentation. Video Introduction to the RF Circuit Collection  Step by step Guide 1. Go to www.nxp.com/rfcollection. 2. Accept the click-through licence. 3. Browse across 400 reference circuits by frequency or power using the sorting tool or doing a direct search in the search engine 4. Depending on documentation availability, either download or request the desired documentation by clicking the corresponding button. 5. Do you need a board? Order it through our distributor partners by using the distributor button in the collection. Products NXP Product Link NXP RF Cicruit collection www.nxp.com/rfcollection 
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    Features QorIQ Processing Platforms BSC9131 SoC based LTE small cell Zero intrusion by fitting in a lamppost’s existing photocell socket Avoids costly site acquisition and lengthy planning procedures Backhaul agnostic – Fiber, copper, PoE wireless P2P Trust architecture provides secure computing environment Block Diagram
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Demo Watch this video showing how NXP shined at International Microwave Symposium 2017. It includes our RF team and the products and technologies being shown for cellular infrastructure, industrial and commercial solutions Products shown at IMS 2017 Cellular LDMOS Finals Cellular LDMOS Drivers Cellular GaN Solutions RF Industrial RF Aerospace and Defense Cocoon Radar Demo Kit 5G Cellular Base Station Demo Links http://www.nxp.com/5Gradio http://www.nxp.com/Airfast http://www.nxp.com/RFGaN http://www.nxp.com/RFOutdoorSmall http://www.nxp.com/products/rf/rf-power-transistors/rf-broadcast-and-ism:RF-BROADCAST-ISM-HOME http://www.nxp.com/products/rf/rf-power-transistors/rf-aerospace-and-defense:RF-AEROSPACE-DEFENSE-HOME
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Description Application demo uses a model trained off the MNIST dataset to recognize individual handwritten digits written on the touch sensitive LCD screen. Thie model conversion can be found here: https://community.nxp.com/docs/DOC-344227. Software The RT1060 SDK should already be installed in MCUXpresso IDE. Drag-and-drop the .zip file into the Project Explorer view, and then compile and flash. NXP Products Link i.MX RT1060 Evaluation Kit i.MX RT1060 Evaluation Kit | NXP  4.3" LCD Panel 4.3" LCD Panel RK043FN02H-CT | NXP 
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Overview The QorIQ® P1025 Data Concentrator reference design will instantly discover and connect with multiple smart energy meters. Featuring an Advanced Metering Infrastructure (AMI), the data concentrator enables bi-directional real-time monitoring and control The data concentrator also enables real-time metering and monitoring on multiple meters and transfers real-time information back to the utility server via a 3G uplink Features High-performance QorIQ ®  P1025 processor with up to 1300 DMIPS available to implement complex usage cases Discovers and interfaces to smart metering devices; implements device machine message specification (DLMS) protocol to standardize communications Broadcast capability to the utility server using a 3G uplink card and Power Line Communications (future development) Board Design Resources
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For further information visit the complete guide on our NXP Designs: https://community.nxp.com/docs/DOC-344585 
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Demo This demo shows the wide voltage operating range of the AXPnT Translator family. An onboard oscillator provides a low frequency clock to drive the input channel. LEDs indicate the signal on the input and output side of the translator. Two dials allow the user to independently set the input and output voltage rails. This demo visually shows how logic translators operate and that the AXPnT family has the widest operating range of current translators     Features: Input voltage range 0 to 2.5V, output voltage range 0 to 5.5V (widest in industry) Based on ultra-lower power AXP Logic family   _______________________________________________________________________________________________________   Featured NXP Products: NXP's AXP Translators _______________________________________________________________________________________________________     SP02
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Demo Kinetis V series enables our customer to get to market quickly using a selection of software and hardware that are targeted at their specific application needs. This electric powered vehicle was developed in a matter of weeks to showcase the model based design tools from Mathworks (MATLAB) and the Motor Control Toolbox from NXP that enables model to code based design rapidly reducing time to market       Features The vehicle has been build using Kinetis V MCUs and FRDM solution hardware to power the vehicle. The software was developed using NXP’s BLDC Reference Design Solution featuring NXPs Embedded Motor Control Libraries. Kinetis V enables customers with little motor control experience or a short time to market with Kinetis Motor Suite. For customer with more focus on model based design Kinetis V enables you with our rMotor Control Development Platform also incorporating NXPs Embedded Software Libraries, or for customers looking for a lower cost, rapid development solution we provide Kinetis Motor Suite. Product Link Kinetis® V Series https://www.nxp.com/products/processors-and-microcontrollers/arm-microcontrollers/general-purpose-mcus/kv-series-cortex-m4-m0-plus-m7:KINETIS_V_SERIES?&cof=0&am=0 Freedom Development Platform for Kinetis® KV1x Family 128 KB, 64 KB, 32 KB and 16 KB Flash MCUs FRDM-KV11Z|Freedom Development Platform|Kinetis MCU | NXP  NXP® Freedom Development Platform for Low-Voltage, 3-Phase PMSM Motor Control FRDM-MC-LVPMSM|Freedom Development Platform | NXP  Low-Voltage, 3-Phase Motor Kit for FRDM platform FRDM-MC-LVMTR|Freedom Development Platform | NXP  High-Voltage Development Platform https://www.nxp.com/products/processors-and-microcontrollers/arm-microcontrollers/general-purpose-mcus/kv-series-cortex-m4-m0-plus-m7/high-voltage-development-platform:HVP-MC3PH?&fsrch=1&sr=1&pageNum=1 Low-Voltage, 3-Phase Motor Control Tower® System Module https://www.nxp.com/design/development-boards/tower-development-boards/peripheral-modules/low-voltage-3-phase-motor-control-tower-system-module:TWR-MC-LV3PH?&lang_cd=en ____________________________________________________________________________________________________________________ Software: Kinetis Designs|NXP ARM Cortex-M0+/M4/M7 Cores|Kinetis V MCUs|NXP 3-Phase AC Induction Motor Control Design|NXP 3-Phase PMSM Motor Control Reference Design|NXP 3-Phase Brushless DC Motor Control Design|NXP ____________________________________________________________________________________________________________________  
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Demo This demo shows the abilities of the T4240 processor in Object and NAS storage applications.  Multiple 10G Ethernet ports provides leading edge storage area networking connectivity while the low power and inherent reliability of the T4240 provide a secure and significant cost and performance advantage Vs. competitive solutions.     Features Dual SAS or SSD controllers with up to 24 drives Dual QorIQ T4240 processors with high-performance failover/synchronization path Dual redundant power supplies Featured NXP Products QorIQ T Series T4240/T4160/T4080 24/16/8
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Demo Demo Summary User case: Quality of Service Feature Demo. Two PCs and one router. One PC serves as the WAN side (Server), the other PC acts as the LAN (Client). There is streaming video from the WAN Side to the LAN side. Traffic can be analyzed and compared Other router possible use cases: WAN Failover,  Load Balancing, Firewall, etc. Products QorIQ® Layerscape 1024A|NXP  QorIQ Layerscape Processors Based on ARM Technology|NXP  Links Small Business Router|NXP  QorIQ® Layerscape 1024A|NXP 
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  Overview Small and medium appliances are part of the things we use every day in our homes. Some of these applications have a similar operating foundation, in this post we present the necessary tools with which you can learn and develop your own application. Block Diagram Base Small and medium appliances are part of the things we use every day in our homes. Some of these applications have a similar operating foundation, in this post we present the necessary tools with which you can learn and develop your own application. For this application we use the i.MX RT1050 as the main MCU. Guides for using NFC with the i.MX RT MCU Guide for using NTAG I²C plus with i.MX RT Boards NFC Reader Library Porting to i.MX RT1050 Guide for user interface with i.MX RT 1050 Hands-On Workshop: Graphics—How To Create Graphics with i.MX RT (1060, 1050 or 1064) - Lab Material 1 Base and Motor Control A second diagram gives us an equal basis, only with the difference of an extra motor control block, we continue to use the i.MX RT 1050 Guide for the use of motor control Get Your Motor Spinning with i.MX RT - Lab 1 Get Your Motor Spinning with i.MX RT - Lab 2 To finish it is necessary to unite everything done with the previous tutorials to have a complete application, which corresponds to the following diagram. Create your application with and share it with us in the NXP Designs community
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